Polymer matrix composites from high-temperature cyanate ester resins and boron nitride nanotube-seeded electrospun fibers

被引:0
作者
Estevez, Joseph E. [1 ]
Garrison, Michael D. [1 ]
Razgaleh, S. A. [2 ]
Harvey, Benjamin G. [1 ]
Ansell, Troy [1 ]
Yelton, Christopher G. [1 ]
Hefley, Gretchen H. [1 ]
机构
[1] Naval Air Warfare Ctr Weap Div NAWCWD, Res Dept, Chem Div, US Navy, 1900 N Knox Rd Stop 6303, China Lake, CA 93555 USA
[2] Duke Univ, Pratt Sch Engn, Dept Civil & Environm Engn, 305 Teer Engn Bldg Box 90271, Durham, NC 27708 USA
关键词
Polymer matrix composites; Electrospinning; TGA; DMA; Cyanate ester; Boron nitride; Nanotubes; Carbonization; ENHANCED THERMAL-CONDUCTIVITY; CARBON-FIBER; THERMOSETTING RESINS; NANOCOMPOSITES; FUNCTIONALIZATION; NANOFIBERS; PRECURSOR;
D O I
10.1007/s42114-024-01189-7
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Boron nitride nanotubes (BNNTs) have great potential as reinforcing agents in polymer composites due to their robust mechanical and thermal properties. BNNT-Polyacrylonitrile (PAN) electrospun composite nanofibers were fabricated with BNNT loadings ranging from 5 to 20 weight percent (wt%) using a high-shearing mixing process. The resulting fibers were then converted to hybrid BN carbon fiber via a stabilization and carbonization process without the addition of strain. The converted fibers exhibited interfacial bonding between the converted carbon matrix and BNNTs, without the need for surface activation or functionalization. At 20 wt% BNNT loading, the hybrid BNNT carbon fiber demonstrated a cohesive network of BNNTs throughout the fiber core, providing a high level of interconnectivity and an additional load-bearing structure. This was evident by the increase in tensile strength and storage modulus for the 20 wt% hybrid BNNT carbon fiber compared to the carbon fiber without BNNTs. Furthermore, we infused the electrospun carbon fiber with a cyanate ester resin to investigate the interface between the enhanced BNNT-seeded carbon fiber and the carbon fiber without BNNTs. Results show that incorporation of the cyanate resin improved the ductility of the brittle carbon electrospun fibers, reducing their tendency to fracture. The composites exhibited similar trends in mechanical strength to the fibers without the matrix, confirming a good interface between the fibers and the matrix. These findings demonstrate the potential of BNNTs as a high-performance reinforcing agent in polymer composites and provide insights into the design and fabrication of a hybrid BN carbon fiber.
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页数:13
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